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首页> 外文期刊>Journal of structural engineering >Buckling of Laminated Glass Elements in Compression
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Buckling of Laminated Glass Elements in Compression

机译:夹层玻璃元件在压缩中的屈曲

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摘要

Monolithic and laminated glass beams or panes are frequently adopted as structural elements in modern and innovative architectural applications. Several aspects related to the load-carrying behavior of these new construction elements are very complex to evaluate. For example, the degradation of mechanical properties of the interlayer, the amplitude of the imperfections affecting the beams, or the presence of added external loads represent only some aspects that contribute to the complexity of evaluating the buckling response of these innovative structural components, characterized by high slenderness ratios and brittle behavior in tension. For these reasons, the buckling of laminated glass beams in compression is investigated in this paper by using a simple analytical model developed on the basis of Newmark's theory of composite beams with deformable connections. Buckling curves are presented to illustrate how a combination of simultaneous weathering variations, initial imperfections, or particular load conditions can affect the response of compressed laminated glass beams and cause their failure.
机译:在现代和创新的建筑应用中,通常采用整体式和层压玻璃梁或窗格作为结构元件。与这些新建筑构件的承载行为有关的几个方面,要进行评估非常复杂。例如,中间层机械性能的下降,影响梁的缺陷的幅度或增加的外部载荷的存在仅代表一些方面,这些方面导致评估这些创新结构部件的屈曲响应的复杂性,其特征在于高纤长比和拉伸时的脆性。由于这些原因,本文使用在纽马克的可变形连接复合材料梁理论的基础上建立的简单分析模型,研究了夹层玻璃梁在压缩状态下的屈曲。提出了屈曲曲线,以说明同时发生的气候变化,初始缺陷或特定负载条件的组合如何影响压缩夹层玻璃梁的响应并导致其失效。

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